A study on the optimization of processing parameters of boron-doped CR-39 solid-state nuclear track detectors for response to thermal neutrons

Deepa Sathian, R. Pal, A. Bakshi, B. Sapra
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引用次数: 0

Abstract

The methodology for personnel monitoring of neutrons in the intermediate and fast energy range using CR-39 solid-state nuclear track detectors (SSNTDs) is well established. This study presents the dosimetric response of boron-doped (carborane) CR-39 detector for the measurement of thermal neutrons. It includes optimization of etching process, minimum detection limit (MDL), and thermal neutron sensitivity. Duration of low frequency (100 Hz) and high frequency (3.5 kHz) for elevated temperature electrochemical etching was optimized as 4 h and 50 minutes respectively, and used for the response characteristic study. The measured thermal neutron sensitivity and MDL were 743 ± 13 tracks cm−2 mSv−1 and 0.02 mSv, respectively. This study is useful for thermal neutron monitoring in reactor, accelerator, and all other nuclear facility environment.
掺硼CR-39固体核径迹探测器热中子响应工艺参数优化研究
利用CR-39固体核径迹探测器(SSNTDs)对中快中子进行人员监测的方法已经建立。本文研究了掺硼(碳硼烷)CR-39探测器测量热中子的剂量学响应。它包括蚀刻工艺的优化、最小检测限(MDL)和热中子灵敏度。优化低频(100 Hz)和高频(3.5 kHz)高温电化学刻蚀时间分别为4 h和50 min,并用于响应特性研究。测得的热中子灵敏度和MDL分别为743±13道径cm−2 mSv−1和0.02 mSv。本研究对反应堆、加速器及其他核设施环境中的热中子监测具有指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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